纳米碳酸钙的加入对聚丙烯-碳酸钙复合材料物理力学性能的影响

D. Deswita, Y. Yusmaniar, G. T. Sulungbudi, Aloma Karo Karo, S. Sudirman
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引用次数: 0

摘要

纳米碳酸钙的加入对聚丙烯-碳酸钙复合材料物理力学性能的影响本研究旨在研究CaCO3纳米颗粒的加入对聚丙烯-CaCO3复合材料物理力学性能的影响。使用差示扫描量热法(DSC)对其进行了拉伸强度,硬度和热分析(包括熔点和熔合热)等几个参数的表征。XRD结果表明,磨矿24 h后CaCO3的粒径为39 nm。本研究制备的聚丙烯- caco3复合材料(PP MF35:纳米caco3)的组成有40%:60%、35%:65%、30%:70%、25%:75%。结果表明:MF35-CaCO3复合材料的拉伸强度随着纳米caco3含量的增加而降低;同时,随着纳米caco3含量的增加,纳米复合材料的硬度增加,但熔点和熔点热降低(ΔHm)。红外光谱分析表明,PP MF35与纳米caco3之间仅存在物理相互作用,未发生化学反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Nanoparticle CaCO3 Addition to the Physical and Mechanical Properties of Polypropylene-CaCO3 Composite
Influence of Nanopaticle CaCO3 Addition to the Physical and Mechanical Properties of Polypropylene-CaCO3 Composite. This research was carried out to study the effect of adding CaCO3 nanoparticle on the physical and mechanical properties of polypropylene-CaCO3 composites. It was characterized by several parameters such as tensile strength, hardness, and thermal analysis including both melting point and heat of fusion using Differential Scanning Calorimetry (DSC). Based on XRD results, the particle size of CaCO3 after 24 hours of milling was 39 nm. There are various compositions of polypropylene-CaCO3 composites (PP MF35: nano-CaCO3) made in this study, namely 40%:60%, 35%:65%, 30%:70%, and 25%:75%. The results showed that the tensile strength of the PP MF35-CaCO3 composites decreased with increasing nano-CaCO3 content. Meanwhile, the hardness of the nanocomposites increased with increasing nano-CaCO3 content, but decreased the melting point and heat of fusions (ΔHm) of the nanocomposites. The infrared spectrum showed that the interaction between PP MF35 and nano-CaCO3 was only physical interaction and there was no chemical reaction.
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